3D full-wave Method of Moments (MoM) is a well established method to solve Maxwell's equations numerically to find electrical performance of package-board structures. However, accurate solution of arbitrary-shaped 3D geometry using MoM depends on proper mesh refinement. The discretization of the electrical structure should be fine enough to appropriately capture spatial variation of parameters being solved for. Appropriate mesh refinement indicators and strategies have been presented in the past to alleviate this problem. In this paper, a novel method is proposed to accelerate krylov-subspace based iterative solution of each such successive incremental meshes resulting from adaptive refinement. Speedups between 2.5-3x is observed in the ite...
In this paper, we describe an accelerated implementa- tion of the Method of Moments (MoM). A framewo...
This paper addresses the direct (noniterative) solution of the method-of-moments (MoM) linear system...
We have developed an iterative solver for the Moment Method. It computes a matrix–vector product wit...
3D full-wave Method of Moments (MoM) is a well established method to solve Maxwell's equations numer...
The accurate solution of 3D full-wave Method of Moments (MoM) on an arbitrary mesh of a package-boar...
3-D full-wave method of moments (MoM) based electromagnetic analysis is a popular means toward accur...
Three-dimensional (3-D) full-wave electromagnetic simulation using method of moments (MoM) under the...
In this paper, a preconditioning technique based on the Schur complement method is presented to acce...
With the rapid increase in available compute power and memory, and bolstered by the advent of effici...
Today's 3-D full-wave electromagnetic (EM) solvers follow the conventional model-mesh-solve workflow...
Full-wave electromagnetic solutions of electrically large objects require large amounts of computer ...
This manuscript deals with optimizing the numerical method called the method of moments (MoM). This ...
A DFT based acceleration algorithm is combined with iterative methods to accelerate the computation ...
The Multiscale Compressed Block Decomposition algorithm (MS-CBD), a direct (non-iterative) linear so...
The purpose of this thesis is the advancement of numerical techniques in computational electromagne...
In this paper, we describe an accelerated implementa- tion of the Method of Moments (MoM). A framewo...
This paper addresses the direct (noniterative) solution of the method-of-moments (MoM) linear system...
We have developed an iterative solver for the Moment Method. It computes a matrix–vector product wit...
3D full-wave Method of Moments (MoM) is a well established method to solve Maxwell's equations numer...
The accurate solution of 3D full-wave Method of Moments (MoM) on an arbitrary mesh of a package-boar...
3-D full-wave method of moments (MoM) based electromagnetic analysis is a popular means toward accur...
Three-dimensional (3-D) full-wave electromagnetic simulation using method of moments (MoM) under the...
In this paper, a preconditioning technique based on the Schur complement method is presented to acce...
With the rapid increase in available compute power and memory, and bolstered by the advent of effici...
Today's 3-D full-wave electromagnetic (EM) solvers follow the conventional model-mesh-solve workflow...
Full-wave electromagnetic solutions of electrically large objects require large amounts of computer ...
This manuscript deals with optimizing the numerical method called the method of moments (MoM). This ...
A DFT based acceleration algorithm is combined with iterative methods to accelerate the computation ...
The Multiscale Compressed Block Decomposition algorithm (MS-CBD), a direct (non-iterative) linear so...
The purpose of this thesis is the advancement of numerical techniques in computational electromagne...
In this paper, we describe an accelerated implementa- tion of the Method of Moments (MoM). A framewo...
This paper addresses the direct (noniterative) solution of the method-of-moments (MoM) linear system...
We have developed an iterative solver for the Moment Method. It computes a matrix–vector product wit...